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Identification of Copper-Containing Oxidoreductases in the Secretomes of Three Colletotrichum Species with a Focus on Copper Radical Oxidases for the Biocatalytic Production of Fatty Aldehydes.

Authors :
Ribeaucourt, David
Saker, Safwan
Navarro, David
Bissaro, Bastien
Drula, Elodie
Correia, Lydie Oliveira
Haon, Mireille
Grisel, Sacha
Lapalu, Nicolas
Henrissat, Bernard
O'Connell, Richard J.
Lambert, Fanny
Lafond, Mickaël
Berrin, Jean-Guy
Source :
Applied & Environmental Microbiology. Dec2021, Vol. 87 Issue 24, p1-15. 15p.
Publication Year :
2021

Abstract

Copper radical alcohol oxidases (CRO-AlcOx), which have been recently discovered among fungal phytopathogens, are attractive for the production of fragrant fatty aldehydes. With the initial objective to investigate the secretion of CRO-AlcOx by natural fungal strains, we undertook time course analyses of the secretomes of three Colletotrichum species (C. graminicola, C. tabacum, and C. destructivum) using proteomics. The addition of a copper-manganese-ethanol mixture in the absence of any plantbiomass mimicking compounds to Colletotrichum cultures unexpectedly induced the secretion of up to 400 proteins, 29 to 52% of which were carbohydrate-active enzymes (CAZymes), including a wide diversity of copper-containing oxidoreductases from the auxiliary activities (AA) class (AA1, AA3, AA5, AA7, AA9, AA11, AA12, AA13, and AA16). Under these specific conditions, while a CRO-glyoxal oxidase from the AA5_1 subfamily was among the most abundantly secreted proteins, the targeted AA5_2 CRO-AlcOx were secreted at lower levels, suggesting heterologous expression as a more promising strategy for CRO-AlcOx production and utilization. C. tabacum and C. destructivum CROAlcOx were thus expressed in Pichia pastoris, and their preference toward both aromatic and aliphatic primary alcohols was assessed. The CRO-AlcOx from C. destructivum was further investigated in applied settings, revealing a full conversion of C6 and C8 alcohols into their corresponding fragrant aldehydes. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
00992240
Volume :
87
Issue :
24
Database :
Academic Search Index
Journal :
Applied & Environmental Microbiology
Publication Type :
Academic Journal
Accession number :
153885665
Full Text :
https://doi.org/10.1128/AEM.01526-21